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Biomedical subjects

C I Civin

Publications and source records attributed to C I Civin.

At least 19 recordsLinked to original sources

A novel temporal expression pattern of three C/EBP family members in differentiating myelomonocytic cells.

Members of the CCAAT/enhancer binding protein (C/EBP) family have been shown to regulate the terminal differentiation of adipocytes and hepatocytes. In these cell lineages, high levels of C/EBP alpha are found only in mature, nondividing cells. Using Western blotting and immunohistochemical staining, we have determined the temporal order of expression for C/EBP alpha, C/EBP beta, and C/EBP delta in differentiating myelomonocytic marrow cells. These studies show a unique temporal pattern of C/EBP isoform expression in the myeloid lineage. In particular, C/EBP alpha expression is very high in proliferative myelomonocytic cells, and diminishes during phenotypic maturation. While we have detected C/EBP alpha, C/EBP beta, and C/EBP delta in multiple myeloid leukemia cell lines, and C/EBP alpha in normal myeloid cells and in de novo human myeloid leukemias, we have not detected these C/EBP isoforms in either erythroid or lymphoid cells. Finally, we show that C/EBP alpha, C/EBP beta, and C/EBP delta protein and messenger RNA levels correlate in maturing granulocytic cells. The formation of tissue-specific combinations of C/EBP homodimers and heterodimers may allow this family of transcription factors to regulate different sets of genes in adipocytes, hepatocytes, and myelomonocytes.

Antigens, Surface

Up-regulation of surface CD34 is associated with protein kinase C-mediated hyperphosphorylation of CD34.

CD34 is a transmembrane sialoglycoprotein expressed by early hematopoietic progenitor cells as well as endothelial cells. Previously we found that CD34 is rapidly and stoichiometrically phosphorylated by activated protein kinase C (PKC) (Fackler, M.J., Civin, C.I., Sutherland, D.R., Baker, M.A., and May, W.S. (1990) J. Biol. Chem. 265, 11056-11061). In the present study, we find dose-dependent up-regulation of CD34 surface expression following treatment of normal human CD34+ bone marrow progenitor cells, cord blood-derived KMT-2, or KG1 a myeloid leukemia cells with the PKC activator 12-O-tetradecanoylphorbol-13-acetate. Up-regulation begins within 1 min of treatment, is maximal by 30 min, is maintained for at least 3 h, and is associated with CD34 hyperphosphorylation. A specific inhibitor of PKC, 2,6-diamino-N-(1[1-(1-oxotridecyl)-2-piperadinyl]methyl)h exan-amide (NPC 15437), blocks both up-regulation and hyperphosphorylation of CD34. CD34 up-regulation is independent of transcription and/or translation and results from the recruitment of preformed intracellular CD34. The endocytosis rate of surface CD34 is unaltered by 12-O-tetradecanoylphorbol-13-acetate. Thus, activation of PKC mediates increased surface expression of the CD34 molecule possibly as a result of phosphorylation of CD34.

Antigens, CD

Treatment of recurrent and refractory pediatric solid tumors with high-dose busulfan and cyclophosphamide followed by autologous bone marrow rescue.

PURPOSE: The purpose of this study was to determine the toxicities of and responses to high-dose busulfan and cyclophosphamide with autologous bone marrow transplant (ABMT) in patients with recurrent or refractory pediatric solid tumors. PATIENTS AND METHODS: We treated 18 patients (ages, 2 to 38 years; median, 14) who had tumors that were resistant to conventional chemotherapy and radiotherapy with busulfan 16 mg/kg and cyclophosphamide 200 mg/kg. Seventeen patients received bone marrow purged with 4-hydroperoxycyclophosphamide; one received unpurged marrow. RESULTS: Despite extensive prior treatment, including radiotherapy in 16 patients, toxicity generally was acceptable. For seven patients with measurable disease, there were three partial responses of 2, 10, and 20 months' duration, three patients with stable disease (SD), and one early, toxic death. Of the 11 patients with no measurable disease at the time of transplantation, one patient with osteosarcoma continues in remission at 57+ months and one third of the patients survived for at least 16 months. Mucositis was the predominant nonhematopoietic toxicity. CONCLUSION: Although the high-dose busulfan and cyclophosphamide combination showed modest activity, changes in the preparative regimen should be considered to improve the response rate in refractory tumors.

Adolescent

Expression of myeloid-associated and lymphoid-associated cell-surface antigens in acute myeloid leukemia of childhood: a Pediatric Oncology Group study.

PURPOSE: Although the expression of both myeloid- and lymphoid-associated cell-surface antigens in acute myeloid leukemia (AML) has been described, the clinical significance of such antigen expression remains unknown in the pediatric population. We sought to define an antibody panel for optimal diagnostic antigenic analysis and to test associations among antigen expression and a number of clinical features at presentation and prognosis in pediatric AML. PATIENTS AND METHODS: We reviewed the extensive immunophenotypic analysis performed at the time of diagnosis on 132 assessable patients registered on a single Pediatric Oncology Group AML protocol between 1984 and 1988. RESULTS: Eighty-eight percent of patients were identified by testing for expression of CD33 and CD13. Overall, 61% of patients expressed at least one lymphoid-associated antigen, most commonly CD4, CD7, or CD19. Expression of CD5, CD10, CD20, or CD22, commonly detected in T- or B-lineage pediatric acute lymphoid leukemia (ALL), was uncommon; coexpression of multiple lymphoid-associated antigens was also uncommon. Expression of the monocyte-associated antigen CD14 correlated with French-American-British (FAB) M4 or M5 morphology. Otherwise, no correlation between antigen expression and FAB classification was noted. None of the myeloid, lymphoid, natural-killer (NK), or progenitor-associated antigens were associated with significant differences in the likelihood of remission induction or event-free survival when expressor versus nonexpressor groups were compared. CONCLUSIONS: The distribution of cell-surface antigen expression in pediatric acute leukemia usually permitted the discrimination of AML from ALL by using a limited panel of antibodies. Although the expression of lymphoid-associated antigens was common, such expression did not seem to be associated with an adverse prognosis in pediatric AML.

Acute Disease

The significance of CD34 and TdT determinations in patients with untreated de novo acute myeloid leukemia.

The results of intensive chemotherapy given to 247 adults at the University of Maryland Cancer Center with previously untreated de novo acute myeloid leukemia (AML) were reviewed with respect to expression of terminal deoxynucleotidyl transferase (TdT) and CD34. Of the 228 patients with data for TdT, 32 (14%) had > 5% of the leukemia cells positive by an immunofluorescence assay. The median age of the TdT-positive patients was approximately 10 years less than the TdT-negative patients (50 versus 60 years). Patients with TdT-positive AML had similar median survival (12 versus 10.5 months) and complete remission (CR) rates (53 versus 59%), but a greater frequency of long-term complete responders (60 of complete remitters versus 20%, p = 0.08) than TdT-negative patients. Of 126 patients tested, 59% were CD34-negative (< 20% reactivity with leukemia cells). These 74 patients (median age 60 years) had a greater CR rate (71 versus 48%, p = 0.008) than the 52 CD34-positive patients (median age 60 years), and improved survival (p = 0.013 by Wilcoxon) although there was no difference in the duration of CR between the CD34-positive and negative groups. Of CD34-positive patients 12/52 remain in continuous CR, and 16/74 CD34-negative patients remain in continuous CR. None of eight patients strongly positive for CD34 (> 70% reactivity) remain disease-free. Positivity for TdT or CD34 was associated with less differentiated AML. Of CD34-positive patients, 44% had FAB M0/M1 morphology versus 13% of CD34-negative patients (p = 0.0001); similarly, 47% of TdT-positive patients were FAB M0/ML1 versus 25% of TdT-negative patients (p = 0.01). Of seven patients with FAB M4E0, five were CD34-positive. Of the 12 CD34-positive survivors, four had FAB M4E0. Thus CD34 expression predicts for CR rate and overall survival in adults with AML. TdT expression does not significantly affect overall outcome but may be associated with longer CR durations.

Acute Disease

Flow cytometric detection of rare normal human marrow cells with immunophenotypes characteristic of acute lymphoblastic leukemia cells.

Rare subpopulations of normal marrow B lymphoid cells expressing immunophenotypes typically found in B-lineage acute lymphoblastic leukaemias (ALL) were sought by multiparameter flow cytometry. First, CD34+ marrow leukocytes were isolated by immune adherence using immunomagnetic microspheres, and analyzed for coexpression of the following pairs of membrane antigens: CD34 CD22; CD34 CD20; and CD10 CD22. Terminal deoxynucleotidyl transferase expression was not assessed. All three antigen combinations were found on small percentages of the CD34-enriched cell population. Second, unseparated normal low density marrow leukocytes were examined by 'gating' on cells with the right-angle light scatter of lymphoid cells, plus either CD34+ or CD10+ immunofluorescence. This independent approach confirmed that rare subsets of normal cells coexpress 'immature' and 'mature' differentiation antigens. In addition, remission marrow cells were examined from two children who had completed therapy for ALL two and four months earlier. Both specimens had a more than threefold increase in CD34+ cells over normal marrow, and cells coexpressing immature and mature cell surface antigens were easily detected. These findings demonstrate that immunophenotypes characteristic of B-lineage ALL, previously labeled 'asynchronous' with respect to the developmental sequence of the majority of normal B lymphoid cells, exist at low frequency in normal human bone marrow.

Antigens, CD

Levels of p53 protein increase with maturation in human hematopoietic cells.

Transfection of the wild-type p53 gene into malignant cell lines usually results in an inhibition of proliferation. However, the physiological function of the endogenous p53 gene product has been difficult to ascertain. In order to examine whether p53 is involved in the regulation of proliferation and/or differentiation of hematopoietic tissue, we modified a recently developed flow cytometric assay to assess p53 protein expression in normal human hematopoietic cells, primary leukemias, and selected leukemia cell lines. In normal human bone marrow, p53 protein was not detected in the proliferative, progenitor cell populations identified by the cell surface antigens CD34 (progenitor cells of multiple lineages) or glycophorin (erythroid precursors). In contrast, low but detectable levels of p53 protein were observed in the nonproliferative, mature lymphoid, granulocytic, and monocytic cell populations. Similarly, p53 levels increased and DNA synthesis decreased during 12-O-tetradecanoylphorbol-13-acetate-induced differentiation of ML-1 myeloblastic leukemia cells. Both of these results suggest that endogenous, wild-type p53 protein may play a role in hematopoietic cell maturation, possibly by contributing to the inhibition of proliferation that occurs during terminal differentiation. Leukemia cells deviated from this pattern of expression: (a) in contrast to the normal, proliferative bone marrow progenitor cells, a significant percentage of patient leukemia samples expressed detectable levels of p53 protein; and (b) leukemia cell lines exhibited lineage-specific abnormalities in p53 expression, with overexpression in lymphoid cell lines and lack of expression in myeloid cell lines.

Acute Disease

Normal human bone marrow precursors that express terminal deoxynucleotidyl transferase include T-cell precursors and possible lymphoid stem cells.

To compare the differentiation of early B- and T-lymphoid precursors, we have used immune adherence combined with analytical flow cytometric techniques to enrich and characterize subsets of the small population of bone marrow mononuclear cells that express the enzyme terminal deoxynucleotidyl transferase (TdT) but lack the CD19 B-lymphoid marker. Two percent to five percent of bone marrow TdT + mononuclear cells belong to the T-lymphoid lineage by virtue of expression of CD7 or CD5. Three-color immunofluorescence studies showed that, like early B-lymphoid precursors, most bone marrow TdT + T cells express HLA-DR and the progenitor cell antigen CD34, and about half express CD10. All CD5 + TdT + cells express surface CD3 and T-cell receptor alpha, beta, while a subset of CD7 + TdT + cells lack these "mature" T cell features. CD2 is low or absent on CD5 + TdT + cells. Examination of isolated CD34 + cells showed that approximately 70% of CD34 + TdT + cells expressed neither CD19, CD22, CD7, nor CD5, and 15% to 50% also lacked CD10. Thus, a major subset of CD34 + TdT + cells lack lineage-specific surface antigens. TdT expression may be the earliest available marker of lymphoid differentiation, and CD34 + TdT + cells are likely to include progenitor cells for both the B and T lineages.

Adult

Isolation and characterization of the CD34+ hematopoietic progenitor cells from the peripheral blood of patients with chronic myeloid leukemia.

A modified version of the original reported panning technique was used to separate CD34+ cells from the peripheral blood of patients with chronic myeloid leukemia (CML). In 13 out of 23 separations, populations of cells were obtained in which CD34+ cells constituted greater than 50% of the cells present. The best recovery and enrichment of the CD34+ cells was achieved when cells were obtained from patients in the accelerated phase of CML, when the cells were processed on the same day they were obtained from patients, and when adherence to soybean agglutinin flasks was used as a pre-enrichment step. In suspension culture, the CD34+ cells were capable of extensive proliferation and differentiation. In semi-solid culture, the number of colony-forming units (CFUs) directly correlated with CD34 positivity. The number of clonogenic cells/CD34+ cells was highest at the time of initial diagnosis of CML, fell during the chronic phase (CP) of the disease, and rose at the time of disease acceleration. This observation suggests that therapy during the CP of the disease produces a greater reduction in clonogenic cells than in the number of CD34+ cells. This effect disappears at the time of disease acceleration, presumably because of the development of drug resistance in the clonogenic cells.

Adult

Expression of hematopoietic progenitor cell associated antigen CD34 in chronic myeloid leukemia.

The expression of progenitor cell associated antigen CD34 was investigated in cells from 28 patients with chronic myeloid leukemia (CML). The CD34 positivity varied from 0-26% in patients with chronic phases CML (n = 17); from 6-64% in patients with accelerated phase CML (n = 4); and from 27-97% in the patients with blastic crisis of CML (n = 8). The difference in CD34 positivity between chronic (mean 10.1 +/- 2.3%), accelerated (37.7 +/- 13.3%) and blastic (58.0 +/- 7.3%) phases of CML is statistically significant (p less than 0.05), however, the number of patients studied, especially in accelerated and blastic phases is very small. There was no difference in the CD34 positivity of the cells in the peripheral blood and in the bone marrow. CD34 positivity was higher in patients with chronic phase CML at diagnosis (untreated patients) than in those who were studied during treatment. The possible importance of serially studying CD34 positivity in patients with CML is discussed in the paper.

Adolescent

Selection of normal human hematopoietic stem cells for bone marrow transplantation using immunomagnetic microspheres and CD34 antibody.

Complete yet nontoxic removal of tumor cells from autologous marrow grafts has proved difficult. New methods for separating normal stem cells from tumor cells are needed. The CD34+ cells in bone marrow, 1-2% of the low-density leukocytes, include precursors of all lymphohematopoietic lineages and probably also the primitive cells responsible for engraftment. A nontoxic, inexpensive, reproducible, and clinically applicable method for positive selection of CD34+ cells was developed. Paramagnetic microspheres coated with goat anti-mouse IgG1 are used to partition the cells; brief incubation with chymopapain is used to release them from the beads. Chymopapain exposure does not injury colony-forming cells or delay engraftment in rodents. Clinical volumes of bone marrow can be processed rapidly. In pilot experiments, the resulting grafts have a purity of 85-99% CD34+ cells and 40% median recovery of the assayable colony-forming cells. These studies form the background for a Phase I trial of autologous BMT using CD34+ stem cells.

Animals

Eight lipooligosaccharides of Neisseria meningitidis react with a monoclonal antibody which binds lacto-N-neotetraose (Gal beta 1-4GlcNAc beta 1-3Gal beta 1-4Glc).

Eight of 12 serologically different lipooligosaccharides (LOS) of Neisseria meningitidis bound a mouse monoclonal antibody (anti-My-28) that recognizes lacto-N-neotetraose (LNnT) (Gal beta 1-4GlcNAc beta 1-3Gal beta 1-4Glc). Among the 12 LOS immunotypes, types 2, 3, 4, 7, 8, and 9 exhibited strong binding; types 5 and 10 were moderate; and types 1, 6, 11, and 12 were negative as measured by enzyme-linked immunosorbent assays, immunodot assays, and immunoblot assays. If an LOS showed multiple components by sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis, the antibody-reactive epitope was expressed on the larger major component, of which the molecular weight was estimated to be 4,000 for most types. The expression of the reactive epitope on the LOS was influenced by the growth medium, and the epitope could be masked by sialylation when N. meningitidis was grown in tryptic soy broth. N-Acetyllactosamine inhibited the binding of the antibody to all eight reactive LOS. The antibody binding to a representative LOS was best inhibited by LNnT and next by N-acetyllactosamine but was not inhibited by lacto-N-tetraose (Gal beta 1-3GlcNAc beta 1-3Gal beta 1-4Glc). These results suggest that the LNnT sequence is present in 8 of 12 immunotype LOS. The presence of the LNnT sequence, a structure expressed by a variety of human cells, in the LOS may play a role in the virulence of N. meningitidis by enabling the organism to evade host immune defenses.

Animals

High-dose cytarabine for intensification of early therapy of childhood acute myeloid leukemia: a Pediatric Oncology Group study.

In June 1984, the Pediatric Oncology Group (POG) initiated a pilot study (8498) using high-dose cytarabine (HdA; 3 g/m2) for intensification of early therapy in childhood acute myelogenous leukemia (AML) (group I). Remission induction therapy consisted of two courses of daunorubicin, cytarabine (Ara-C), and thioguanine (DAT). Postremission therapy consisted of four sequential courses, each consisting of (1) four doses of HdA (HdA4) followed by asparaginase (L-Asp), (2) etoposide (VP) plus azacytidine (Az), (3) prednisone, vincristine, methotrexate, and mercaptopurine (POMP), and (4) Ara-C daily for 5 days by continuous infusion. Six doses of intrathecal Ara-C were given for CNS prophylaxis. In December 1986, the protocol was amended (group II) to substitute six doses of HdA (HdA6) for the second DAT (two + five) induction course; postinduction, a single course of HdA6 was given instead of four HdA/L-Asp courses, and the remainder of the therapy was unchanged. One hundred forty group I patients and 145 group II patients were assessable. The two groups were similar with regard to clinical prognostic groups. No significant differences were noted in the two groups with regard to remission induction (85% [SE = 2%] in each group), induction deaths (6.5% v 7.0%), or deaths in remission (one in each group). Cerebellar toxicity was reported in three patients in group II (with HdA6) but none in group I (HdA4). At present, patients who received HdA6 (group II) had higher event-free survival than patients in group I (EFS at 3 years, 34% [SE = 11%] v 29% [SE = 4%]), and disease-free survival (DFS at 3 years, 42% [SE = 14%] v 34% [SE = 4%]), but the differences were not statistically significant. In both groups, children less than 2 years and those with WBCs less than 100,000/microL had significantly better outcome (EFS of 55% [SE = 10%] and 36% [SE = 5%] at 3 years, respectively) than children greater than or equal to 2 years and those with WBCs greater than or equal to 100,000/microL (EFS of 27% [SE = 5%] and 20% [SE = 9%] at 3 years, respectively.

Adolescent

Initiation in DNA synthesis by colony-stimulating factors in subsets of human CD34+ marrow cells.

Initiation of DNA synthesis by recombinant colony-stimulating factors (CSFs) was assessed in normal human marrow blast cells isolated by expression of CD34 antigen (tritiated thymidine incorporation). Continuous exposure to CSF was required. A mild increase in DNA synthesis was initiated by granulocyte CSF (G-CSF; greater than or equal to 1 ng/ml), to approximately 1.5 times control levels. A greater increase was initiated by granulocyte-macrophage CSF (GM-CSF), with a threshold of approximately 0.1 ng/ml and a plateau increment 2.5 times control levels. CD34+ cells were stimulated by interleukin 3 (IL-3) over a wide concentration range: two times control at 0.1/ml, three times control at 1 ng/ml, and four times control at 10 ng/ml. Overlap between responding populations was analyzed. G-CSF plus GM-CSF induced DNA synthesis greater than GM-CSF alone and supported the growth of much larger granulocyte-monocyte colonies. At saturating IL-3 concentrations, neither G-CSF nor GM-CSF induced additional DNA synthesis; at lower concentrations of IL-3, however, GM-CSF recruited additional cells into DNA synthesis. Using CD10 and CD19 antibodies to separate B-lineage cells, the CD34+ cells responding to CSF were observed to be in the non-B-lineage subset. Therefore 1) the response of CD34+ cell subsets CSFs is IL-3 greater than GM-CSF greater than G-CSF, and the IL-3-responsive population is heterogeneous for dose requirement; 2) a CD34+ subpopulation responding to concurrent G-CSF and GM-CSF includes increased proliferative potential cells; 3) IL-3-responsive cells include GM-CSF- and G-CSF-responsive cells, but cells responding to lower IL-3 concentration do not respond to GM-CSF; and 4) B-cell precursors do not respond to GM-CSF or IL-3 in this assay.

Antigens, CD

Target cells for granulocyte colony-stimulating factor, interleukin-3, and interleukin-5 in differentiation pathways of neutrophils and eosinophils.

To study the relationship between hematopoietic factors and their responsive hematopoietic progenitors in the differentiation process, both purified factors and enriched progenitors are required. We isolated total CD34+ cells, CD34+,CD33+ cells, and CD34+,CD33- cells individually from normal human bone marrow cells by fluorescence-activated cell sorter (FACS), and examined the effects of granulocyte colony-stimulating factor (G-CSF), interleukin-3 (IL-3), and IL-5 on in vitro colony formation of these cells. CD34+,CD33+ cells formed granulocyte colonies in the presence of G-CSF. Both CD34+,CD33+ cells and CD34+,CD33- cells formed granulocyte/macrophage colonies in the presence of IL-3. Eosinophil (Eo) colonies were only formed by CD34+,CD33- cells in response to IL-3, but scarcely formed by CD34+ cells in the presence of IL-5. We performed the two-step cultures consisting of the primary liquid culture for 6 days and the secondary methylcellulose culture, and serially examined changes in phenotypes of ,he cells cultured in the primary culture. CD34-,CD33+ cells derived from CD34+,CD33+ cells by preincubation with G-CSF or IL-3 formed Eo colonies in the presence of IL-5 but not IL-3. CD34-,CD33+ cells derived from CD34+,CD33- cells by preincubation with IL-3 also formed Eo colonies by support of IL-5 as well as IL-3. Both CD34+ cells gradually lost the CD34 antigen by day 6 of incubation with G-CSF or IL-3. Loss of this antigen was well-correlated with acquisition of susceptibility to IL-5. It was concluded that G-CSF supported the neutrophil differentiation of committed colony-forming cells, IL-3 supported that of both committed and multipotent colony-forming cells. G-CSF and IL-3 also supported the early stage of E. differentiation; IL-5 supported the late stage of that.

Antigens, CD34

Detection of minimal residual T cell acute lymphoblastic leukemia by flow cytometry.

We have developed a flow cytometric assay for the determination of cellular expression of terminal deoxynucleotidyl transferase (TdT) and applied this to the detection of minimal residual T cell acute lymphoblastic leukemia (T-ALL). The flow cytometric assay for TdT demonstrated requisite specificity: TdT was localized to the nucleus, and was detected in MOLT3 T lymphoblasts, clinical T-ALL samples, and normal bone marrow B lymphoid precursors, but in neither the KG1a myeloid leukemia cell line nor normal myeloid cells. Co-expression of TdT and the pan T cell marker CD5 was used to quantify T lymphoblasts. 0.25 +/- 0.13% of normal adult bone marrow CD5+ cells were TdT+; these may represent early T lymphoid precursors. When admixed with normal bone marrow, CD5+TdT+ leukemic cells could be detected above background levels at an added concentration of 0.035% (95% confidence interval 0.028-0.43%). Long term follow-up of a large number of patients will be required to determine the clinical significance of a minimal burden of leukemic cells.

Antibodies, Monoclonal

Activated protein kinase C directly phosphorylates the CD34 antigen on hematopoietic cells.

The CD34 antigen is a human leukocyte membrane protein expressed specifically by lymphohematopoietic progenitor cells. We found that CD34 is a phosphoprotein and therefore examined the regulation of its phosphorylation. Activation of protein kinase C (PKC) enhanced CD34 phosphorylation. The PKC activators, 12-O-tetradecanoylphorbol-13-acetate and bryostatin-1, induced rapid, stoichiometric hyperphosphorylation of CD34 protein in cells, resulting in a 5-fold increase in CD34 phosphorylation. In vitro kinase studies revealed that purified PKC could directly phosphorylate purified CD34. Only serine phosphorylation was detected in the CD34 molecule. Two-dimensional phosphopeptide mapping experiments indicated that PKC induces the phosphorylation of identical serine residue(s) in vitro and in vivo (in KG1 cells). These are newly phosphorylated serine residue(s), which are not detectably phosphorylated in CD34 from exponentially growing KG1 cells. These data indicate that the developmental stage-specific molecule, CD34, is a phosphorylation target for activated PKC. Furthermore, these findings raise the possibility that PKC activation and phosphorylation of the CD34 molecule may play a role in signal transduction during early lymphohematopoiesis.

Antigens, CD